病毒学
埃博拉病毒
抗体
埃博拉病毒
生物
病毒
表位
中和抗体
逃避(道德)
糖蛋白
NPC1
第41页
马尔堡病毒
肽序列
病毒血症
免疫系统
序列(生物学)
VP40型
抗体依赖性增强
七肽重复区
病毒包膜
病毒进入
表位定位
淋巴细胞性脉络膜脑膜炎
免疫学
丝虫科
作者
Li Wang,Binqian Zou,Banghui Liu,Yong Ma,Lu Xue,Gul Habib,Yang Xinglou,Xinwen Chen,Jiantao Chen,J Y Zhao,Ying Zhang,Zifeng Yang,J He,Xiaoli Xiong
标识
DOI:10.1073/pnas.2529436123
摘要
Ebola virus (EBOV) and Marburg virus (MARV) are highly lethal filoviruses that cause severe hemorrhagic fever in humans. A recently identified bat-borne filovirus, Měnglà virus (MLAV), uses the same NPC1 receptor as EBOV and MARV, raising concerns about its potential cross-species transmission. Here, we report cryo-EM structures of the MLAV surface glycoprotein (GP) in its unbound form and in complex with the MARV-neutralizing antibody MR191. MLAV GP exhibits distinctive structural features in the Wing and heptad repeat 1D (HR1D) regions, retains a visible Cap structure even after protease treatment, and contains a MARV GP-like α2 helix. MR191, a broadly neutralizing marburgvirus antibody that targets the conserved NPC1 receptor-binding pocket in MLAV GP, nonetheless exhibits impaired neutralizing activity, likely due to shielding by the MLAV Cap. In addition, the MLAV mucin-like domain, α2 helix, and HR1A region hinder binding by representative broadly neutralizing ebolavirus antibodies targeting the GP-waist, including 6D6, CA45, ADI-15878, and ADI-15946. Together, these results provide the first structural insights into MLAV GP and identify immune evasion driven by structural and sequence divergence as a major challenge for pan-filovirus antibody development.
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